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认知衰老与时间感知:贝叶斯优化与简并性的作用

Cognitive Aging and Time Perception: Roles of Bayesian Optimization and Degeneracy.

作者信息

Turgeon Martine, Lustig Cindy, Meck Warren H

机构信息

Douglas Mental Health University Institute, McGill University Montreal, QC, Canada.

Department of Psychology, University of Michigan Ann Arbor, MI, USA.

出版信息

Front Aging Neurosci. 2016 May 18;8:102. doi: 10.3389/fnagi.2016.00102. eCollection 2016.

Abstract

This review outlines the basic psychological and neurobiological processes associated with age-related distortions in timing and time perception in the hundredths of milliseconds-to-minutes range. The difficulty in separating indirect effects of impairments in attention and memory from direct effects on timing mechanisms is addressed. The main premise is that normal aging is commonly associated with increased noise and temporal uncertainty as a result of impairments in attention and memory as well as the possible reduction in the accuracy and precision of a central timing mechanism supported by dopamine-glutamate interactions in cortico-striatal circuits. Pertinent to these findings, potential interventions that may reduce the likelihood of observing age-related declines in timing are discussed. Bayesian optimization models are able to account for the adaptive changes observed in time perception by assuming that older adults are more likely to base their temporal judgments on statistical inferences derived from multiple trials than on a single trial's clock reading, which is more susceptible to distortion. We propose that the timing functions assigned to the age-sensitive fronto-striatal network can be subserved by other neural networks typically associated with finely-tuned perceptuo-motor adjustments, through degeneracy principles (different structures serving a common function).

摘要

本综述概述了与年龄相关的、在百分之一毫秒至分钟范围内的时间和时间感知扭曲相关的基本心理和神经生物学过程。文中探讨了将注意力和记忆障碍的间接影响与对时间机制的直接影响区分开来的困难。主要前提是,正常衰老通常与噪声增加和时间不确定性增加有关,这是由于注意力和记忆障碍以及皮质-纹状体回路中多巴胺-谷氨酸相互作用支持的中央计时机制的准确性和精确性可能降低所致。与这些发现相关的是,讨论了可能降低观察到与年龄相关的时间下降可能性的潜在干预措施。贝叶斯优化模型能够解释在时间感知中观察到的适应性变化,其假设是老年人更有可能基于从多次试验得出的统计推断做出时间判断,而不是基于单次试验的时钟读数,因为单次试验的时钟读数更容易失真。我们提出,分配给对年龄敏感的额-纹状体网络的计时功能可以由其他通常与精细调整的感知-运动调整相关的神经网络通过简并原理(不同结构服务于共同功能)来实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/982c/4870863/020ae2d3dbea/fnagi-08-00102-g0001.jpg

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